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混合水泥:力学性能、微观结构和放射行为。

Hybrid Cements: Mechanical Properties, Microstructure and Radiological Behavior.

机构信息

Department of Materials, Eduardo Torroja Institute for Construction Sciences (IETcc-CSIC), 28033 Madrid, Spain.

Department of Environment, Environmental Radioactivity and Radiological Surveillance (CIEMAT), Avenida Complutense 40, 28040 Madrid, Spain.

出版信息

Molecules. 2022 Jan 13;27(2):498. doi: 10.3390/molecules27020498.

Abstract

The use of more eco-efficient cements in concretes is one of the keys to ensuring construction industry sustainability. Such eco-efficient binders often contain large but variable proportions of industrial waste or by-products in their composition, many of which may be naturally occurring radioactive materials (NORMs). This study explored the application of a new gamma spectrometric method for measuring radionuclide activity in hybrid alkali-activated cements from solid 5 cm cubic specimens rather than powder samples. The research involved assessing the effect of significant variables such as the nature of the alkaline activator, reaction time and curing conditions to relate the microstructures identified to the radiological behavior observed. The findings showed that varying the inputs generated pastes with similar reaction products (C-S-H, C-A-S-H and (N,C)-A-S-H) but different microstructures. The new gamma spectrometric method for measuring radioactivity in solid 5 cm cubic specimens in alkaline pastes was found to be valid. The variables involved in hybrid cement activation were shown to have no impact on specimen radioactive content. The powder samples, however, emanated Rn (a descendent of Ra), possibly due to the deformation taking place in fly ash structure during alkaline activation. Further research would be required to explain that finding.

摘要

在混凝土中使用更具生态效益的水泥是确保建筑行业可持续性的关键之一。这种生态效益高的粘结剂在其组成中通常含有大量但可变比例的工业废物或副产品,其中许多可能是天然存在的放射性物质(NORMs)。本研究探讨了一种新的伽马光谱法在测量来自固体 5 厘米立方试件而不是粉末样品的混合碱激活水泥中放射性核素活性中的应用。该研究涉及评估碱性激活剂的性质、反应时间和养护条件等显著变量的影响,以将所确定的微观结构与观察到的放射性行为相关联。研究结果表明,改变输入会产生具有相似反应产物(C-S-H、C-A-S-H 和 (N,C)-A-S-H)但不同微观结构的糊剂。发现用于测量碱性糊剂中固体 5 厘米立方试件放射性的新伽马光谱法是有效的。混合水泥激活中涉及的变量对样品放射性含量没有影响。然而,粉末样品会发出 Rn(Ra 的后裔),可能是由于在碱性激活过程中粉煤灰结构发生变形。需要进一步研究来解释这一发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14c1/8781129/c7ad56f78673/molecules-27-00498-g001.jpg

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